Wnt 信号通路
中文名称
通路描述
Wnt 蛋白是分泌的形态发生素,对于基本的发育过程至关重要,如细胞命运决定、祖细胞增殖以及控制不对称细胞分裂,在多种物种和器官中发挥作用。至少存在三种不同的 Wnt 信号通路:经典通路、细胞极性通路(PCP)和 Wnt/Ca2+ 通路。在经典 Wnt 通路中,Wnt 配体与其受体结合的主要效应是通过抑制 beta-catenin 降解复合物来稳定细胞质中的 beta-catenin。然后 beta-catenin 可以自由进入细胞核,通过与 TCF(T 细胞因子)家族转录因子的相互作用以及共激活因子的招募,激活 Wnt 调控的基因。细胞极性(PCP)信号导致小 GTP 酶 RHOA(RAS 同源基因家族成员 A)和 RAC1 的激活,这些 GTP 酶激活应激激酶 JNK(Jun N 端激酶)和 ROCK(RHO 相关螺旋结构域蛋白激酶 1),导致细胞骨架重塑以及细胞粘附和运动性的改变。WNT-Ca2+ 信号通过 G 蛋白和磷脂酶介导,导致细胞质内游离钙浓度的暂时性升高,随后激活激酶 PKC(蛋白激酶 C)和 CAMKII(钙调蛋白依赖性激酶 II)以及磷酸酶钙调蛋白依赖性激酶 II。
英文描述
Wnt proteins are secreted morphogens that are required for basic developmental processes, such as cell-fate specification, progenitor-cell proliferation and the control of asymmetric cell division, in many different species and organs. There are at least three different Wnt pathways: the canonical pathway, the planar cell polarity (PCP) pathway and the Wnt/Ca2+ pathway. In the canonical Wnt pathway, the major effect of Wnt ligand binding to its receptor is the stabilization of cytoplasmic beta-catenin through inhibition of the bea-catenin degradation complex. Beta-catenin is then free to enter the nucleus and activate Wnt-regulated genes through its interaction with TCF (T-cell factor) family transcription factors and concomitant recruitment of coactivators. Planar cell polarity (PCP) signaling leads to the activation of the small GTPases RHOA (RAS homologue gene-family member A) and RAC1, which activate the stress kinase JNK (Jun N-terminal kinase) and ROCK (RHO-associated coiled-coil-containing protein kinase 1) and leads to remodelling of the cytoskeleton and changes in cell adhesion and motility. WNT-Ca2+ signalling is mediated through G proteins and phospholipases and leads to transient increases in cytoplasmic free calcium that subsequently activate the kinase PKC (protein kinase C) and CAMKII (calcium calmodulin mediated kinase II) and the phosphatase calcineurin.
所含基因
178 个基因
ANKRD6
APC
APC2
APCDD1
APCDD1L
AXIN1
AXIN2
BAMBI
BTRC
CACYBP
CAMK2A
CAMK2B
CAMK2D
CAMK2G
CBY1
CCAR2
CCDC88C
CCN4
CCND1
CCND2
CCND3
CELSR1
CELSR2
CELSR3
CER1
CHD8
CREBBP
CSNK1A1
CSNK1A1L
CSNK1E
CSNK2A1
CSNK2A2
CSNK2A3
CSNK2B
CTBP1
CTBP2
CTNNB1
CTNNBIP1
CTNND2
CUL1
CXXC4
DAAM1
DAAM2
DKK1
DKK2
DKK4
DVL1
DVL2
DVL3
EP300
FBXW11
FOSL1
FRAT1
FRAT2
FRZB
FZD1
FZD10
FZD2
FZD3
FZD4
FZD5
FZD6
FZD7
FZD8
FZD9
GPC4
GSK3B
INVS
JUN
LEF1
LGR4
LGR5
LGR6
LRP5
LRP6
LZTS2
MAP3K7
MAPK10
MAPK8
MAPK9
MCC
MMP7
MYC
NFATC1
NFATC2
NFATC3
NFATC4
NKD1
NKD2
NLK
NOTUM
PLCB1
PLCB2
PLCB3
PLCB4
PORCN
PPARD
PPP3CA
PPP3CB
PPP3CC
PPP3R1
PPP3R2
PRICKLE1
PRICKLE2
PRICKLE3
PRICKLE4
PRKACA
PRKACB
PRKACG
PRKCA
PRKCB
PRKCG
PSEN1
RAC1
RAC2
RAC3
RBX1
RHOA
RNF43
ROCK2
ROR1
ROR2
RSPO1
RSPO2
RSPO3
RSPO4
RUVBL1
RYK
SENP2
SERPINF1
SFRP1
SFRP2
SFRP4
SFRP5
SIAH1
SIRT1
SKP1
SMAD3
SMAD4
SOST
SOX17
TBL1X
TBL1XR1
TBL1Y
TCF7
TCF7L1
TCF7L2
TLE1
TLE2
TLE3
TLE4
TLE6
TLE7
TP53
TPTEP2-CSNK1E
VANGL1
VANGL2
WIF1
WNT1
WNT10A
WNT10B
WNT11
WNT16
WNT2
WNT2B
WNT3
WNT3A
WNT4
WNT5A
WNT5B
WNT6
WNT7A
WNT7B
WNT8A
WNT8B
WNT9A
WNT9B
ZNRF3